Literature DB >> 11043401

The effects of high magnitude cyclic tensile load on cartilage matrix metabolism in cultured chondrocytes.

K Honda1, S Ohno, K Tanimoto, C Ijuin, N Tanaka, T Doi, Y Kato, K Tanne.   

Abstract

Excessive mechanical load is thought to be responsible for the onset of osteoarthrosis (OA), but the mechanisms of cartilage destruction caused by mechanical loads remain unknown. In this study we applied a high magnitude cyclic tensile load to cultured chondrocytes using a Flexercell strain unit, which produces a change in cell morphology from a polygonal to spindle-like shape, and examined the protein level of cartilage matrixes and the gene expression of matrix metalloproteinases (MMPs), tissue inhibitors of matrix metalloproteinases (TIMPs) and proinflammatory cytokines such as IL-1beta and TNF-alpha. Toluidine blue staining, type II collagen immunostaining, and an assay of the incorporation of [35S]sulfate into proteoglycans revealed a decrease in the level of cartilage-specific matrixes in chondrocyte cultures subjected to high magnitude cyclic tensile load. PCR-Southern blot analysis showed that the high magnitude cyclic tensile load increased the mRNA level of MMP-1, MMP-3, MMP-9, IL-1beta, TNF-alpha and TIMP-1 in the cultured chondrocytes, while the mRNA level of MMP-2 and TIMP-2 was unchanged. Moreover, the induction of MMP-1, MMP-3 and MMP-9 mRNA expression was observed in the presence of cycloheximide, an inhibitor of protein synthesis. These findings suggest that excessive mechanical load directly changes the metabolism of cartilage by reducing the matrix components and causing a quantitative imbalance between MMPs and TIMPs.

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Year:  2000        PMID: 11043401     DOI: 10.1078/0171-9335-00089

Source DB:  PubMed          Journal:  Eur J Cell Biol        ISSN: 0171-9335            Impact factor:   4.492


  34 in total

1.  Structure and function of the septum nasi and the underlying tension chord in crocodylians.

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Review 2.  Impact of mechanical stretch on the cell behaviors of bone and surrounding tissues.

Authors:  Hye-Sun Yu; Jung-Ju Kim; Hae-Won Kim; Mark P Lewis; Ivan Wall
Journal:  J Tissue Eng       Date:  2015-12-29       Impact factor: 7.813

3.  Cyclic Tensile Strain Upregulates Pro-Inflammatory Cytokine Expression Via FAK-MAPK Signaling in Chondrocytes.

Authors:  Makoto Yanoshita; Naoto Hirose; Yuki Okamoto; Chikako Sumi; Mami Takano; Sayuri Nishiyama; Yuki Asakawa-Tanne; Kayo Horie; Azusa Onishi; Yuka Yamauchi; Tomomi Mitsuyoshi; Ryo Kunimatsu; Kotaro Tanimoto
Journal:  Inflammation       Date:  2018-10       Impact factor: 4.092

4.  [Changes in chemokine receptor 4, interleukin-6, and collagen X expression in the ATDC5 cell line stimulated by cyclic tensile strain and stromal cell-derived factor-1].

Authors:  Kuang Bin; Wang Qingyu; Song Rong; Sun Yanyan; Chai Zhiguo; Duan Yinzhong; Dai Juan
Journal:  Hua Xi Kou Qiang Yi Xue Za Zhi       Date:  2014-12

5.  Static compression of single chondrocytes catabolically modifies single-cell gene expression.

Authors:  Nic D Leipzig; Kyriacos A Athanasiou
Journal:  Biophys J       Date:  2007-12-07       Impact factor: 4.033

6.  Acid-sensing ion channel 1a mediates acid-induced inhibition of matrix metabolism of rat articular chondrocytes via the MAPK signaling pathway.

Authors:  Cheng Sun; Shimin Wang; Wei Hu
Journal:  Mol Cell Biochem       Date:  2017-10-31       Impact factor: 3.396

7.  Intermittent Cyclic Mechanical Tension Promotes Degeneration of Endplate Cartilage via the Nuclear Factor-κB Signaling Pathway: an in Vivo Study.

Authors:  Liang Xiao; Hong-Guang Xu; Hong Wang; Ping Liu; Chen Liu; Xiang Shen; Tao Zhang; Yong-Ming Xu
Journal:  Orthop Surg       Date:  2016-08       Impact factor: 2.071

8.  Physiologic deformational loading does not counteract the catabolic effects of interleukin-1 in long-term culture of chondrocyte-seeded agarose constructs.

Authors:  Eric G Lima; Andrea R Tan; Timon Tai; Liming Bian; Gerard A Ateshian; James L Cook; Clark T Hung
Journal:  J Biomech       Date:  2008-09-26       Impact factor: 2.712

9.  Modelling cartilage mechanobiology.

Authors:  Dennis R Carter; Marcy Wong
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2003-09-29       Impact factor: 6.237

10.  Cyclic loading inhibits expression of MMP-3 but not MMP-1 in an in vitro rabbit flexor tendon model.

Authors:  Krishna R Asundi; David M Rempel
Journal:  Clin Biomech (Bristol, Avon)       Date:  2007-09-24       Impact factor: 2.063

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